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健康成年人中速度调谐运动感知的神经关联

Neural Correlates of Speed-Tuned Motion Perception in Healthy Adults.

作者信息

Meier Kimberly, Partanen Marita, Giaschi Deborah

机构信息

Department of Psychology, 8166 University of British Columbia , Vancouver, British Columbia, Canada.

Department of Education and Counselling Psychology and Special Education, 8166 University of British Columbia , Vancouver, British Columbia, Canada.

出版信息

Perception. 2018 Jun;47(6):660-683. doi: 10.1177/0301006618771463. Epub 2018 Apr 23.

Abstract

It has been suggested that slow and medium-to-fast speeds of motion may be processed by at least partially separate mechanisms. The purpose of this study was to establish the cortical areas activated during motion-defined form and global motion tasks as a function of speed, using functional magnetic resonance imaging. Participants performed discrimination tasks with random dot stimuli at high coherence, at coherence near their own thresholds, and for random motion. Stimuli were moving at 0.1 or 5 deg/s. In the motion-defined form task, lateral occipital complex, V5/MT+ and intraparietal sulcus showed greater activation by high or near-threshold coherence than by random motion stimuli; V5/MT+ and intraparietal sulcus demonstrated greater activation for 5 than 0.1 deg/s dot motion. In the global motion task, only high coherence stimuli elicited significant activation over random motion; this activation was primarily in nonclassical motion areas. V5/MT+ was active for all motion conditions and showed similar activation for coherent and random motion. No regions demonstrated speed-tuning effects for global motion. These results suggest that similar cortical systems are activated by slow- and medium-speed stimuli during these tasks in healthy adults.

摘要

有人提出,慢速以及中速到快速的运动可能至少由部分独立的机制进行处理。本研究的目的是利用功能磁共振成像,确定在运动定义形式和全局运动任务中,作为速度函数的激活皮质区域。参与者对高相干性、接近自身阈值的相干性以及随机运动的随机点刺激执行辨别任务。刺激以0.1或5°/秒的速度移动。在运动定义形式任务中,枕外侧复合体、V5/MT+和顶内沟在高相干性或接近阈值的相干性下比在随机运动刺激下表现出更大的激活;V5/MT+和顶内沟在点运动速度为5°/秒时比0.1°/秒时表现出更大的激活。在全局运动任务中,只有高相干性刺激比随机运动引发了显著的激活;这种激活主要在非经典运动区域。V5/MT+在所有运动条件下均有激活,并且在相干运动和随机运动中表现出相似的激活。没有区域表现出对全局运动的速度调谐效应。这些结果表明,在这些任务中,健康成年人的慢速和中速刺激激活了相似的皮质系统。

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